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Proactive Information Caching for Efficient Resource Discovery in a Self-Structured Grid

机译:主动信息缓存以在自构网格中进行有效的资源发现

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The cornerstone of successful deployment of large scale grid systems depends on efficient resource discovery mechanisms. In this respect, this paper presents a grid information system supported by a self-structured overlay topology and proactive information caching. The proposed approach features an ant-inspired self-organized overlay construction that maintains a bounded diameter overlay, and a selective flooding based discovery algorithm that exploit local caches to reduce the number of visited nodes. The caches are periodically exchanged between neighboring nodes using an epidemic replication mechanism that is based on a gossiping algorithm, thus allowing nodes to have a more general view of the network and its resources. We conducted extensive experimentation that provides evidence that the average number of hops required to efficiently locate resources is limited and that our framework performs well with respect to hit rate and network overhead.
机译:成功部署大规模网格系统的基石取决于有效的资源发现机制。在这方面,本文提出了一种具有自结构覆盖拓扑和主动信息缓存功能的网格信息系统。所提出的方法的特点是:保留了有界直径覆盖的蚂蚁启发式自组织覆盖结构,以及利用本地缓存减少访问节点数量的基于选择性泛洪的发现算法。使用基于闲聊算法的流行复制机制在相邻节点之间定期交换高速缓存,从而使节点可以更全面地了解网络及其资源。我们进行了广泛的实验,提供的证据表明有效定位资源所需的平均跳数是有限的,并且我们的框架在命中率和网络开销方面表现良好。

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